Rational design of yolk-shell silicon dioxide@hollow carbon spheres as advanced Li-S cathode hosts
Short cycle life and low Coulombic efficiency, in conjunction with fast self-discharge, render lithium-sulfur batteries impractical for commercial applications. In this work, we demonstrated that a "yolk-shell" structure with a polar silicon dioxide (SiO ) core in a hollow carbon sphere (S...
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Veröffentlicht in: | Nanoscale 2017-10, Vol.9 (39), p.14881-14887 |
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Hauptverfasser: | , , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Short cycle life and low Coulombic efficiency, in conjunction with fast self-discharge, render lithium-sulfur batteries impractical for commercial applications. In this work, we demonstrated that a "yolk-shell" structure with a polar silicon dioxide (SiO
) core in a hollow carbon sphere (SiO
@HC) acts as a highly efficient sulfur host. Such nanoarchitecture benefits from both a physical barrier and chemical adsorption via a carbon shell and a polar SiO
core. Furthermore, the internal void space could buffer the huge volume expansion of active sulfur during lithiation. The resulting SiO
@HC/S composite exhibits a high mass S loading (∼76 wt%), high initial specific capacity of 1200 mA h g
at 0.2C, superior rate performance (728 mA h g
at 3C), ultraslow capacity decay of 0.056% per cycle at a high rate of 2C and an extraordinary anti-self-discharge feature. |
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ISSN: | 2040-3364 2040-3372 |
DOI: | 10.1039/c7nr04320a |